Shieh C-J, Liao H-F, Lee C-C
Department of Bioindustry Biotechnology, Dayeh University, 112 Shan-Jiau Road, Da-Tsuen, Chang-Hua 51505, Taiwan.
Bioresour Technol. 2003 Jun;88(2):103-6. doi: 10.1016/s0960-8524(02)00292-4.
Biodiesel prepared by catalyzed mild transesterification has become of much current interest for bioenergy. The ability of a commercial immobilized lipase (Novo Industries--Bagsvaerd, Denmark) from Rhizomucor miehei (Lipozyme IM-77) to catalyze the transesterification of soybean oil and methanol was investigated in this study. Response surface methodology and 5-level-5-factor central composite rotatable design were employed to evaluate the effects on reaction time, temperature, enzyme amount, molar ratio of methanol to soybean oil, and added water content on percentage weight conversion to soybean oil methyl ester by transesterification. Based on ridge max analysis, the optimum synthesis conditions giving 92.2% weight conversion were: reaction time 6.3 h, temperature 36.5 degrees C, enzyme amount 0.9 BAUN (Batch Acidolysis Units NOVO), substrate molar ratio 3.4:1, and added water 5.8%.
通过催化温和酯交换反应制备的生物柴油目前已成为生物能源领域备受关注的对象。本研究考察了一种来自米黑根毛霉的商业固定化脂肪酶(丹麦诺维信公司—— Bagsvaerd)(Lipozyme IM - 77)催化大豆油与甲醇酯交换反应的能力。采用响应面法和五水平五因素中心复合旋转设计,评估反应时间、温度、酶用量、甲醇与大豆油的摩尔比以及添加水含量对酯交换反应转化为大豆油甲酯的重量百分比转化率的影响。基于岭脊最大值分析,实现92.2%重量转化率的最佳合成条件为:反应时间6.3小时、温度36.5摄氏度、酶用量0.9 BAUN(诺维信批次酸解单位)、底物摩尔比3.4:1以及添加水5.8%。